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20082025
most citedQuantum Neuron: an elementary building block for machine learning on quantum computers

114 citations · 159 across the 6 of their papers we have counts for

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15 papers · 1 filter

quant-ph2025

Operating two exchange-only qubits in parallel

Mateusz T. Mądzik, Florian Luthi, Gian Giacomo Guerreschi +38

Semiconductors are among the most promising platforms to implement large-scale quantum computers, as advanced manufacturing techniques allow fabrication of large quantum dot arrays…

quant-ph2024

Short two-qubit pulse sequences for exchange-only spin qubits in 2D layouts

Jason D. Chadwick, Gian Giacomo Guerreschi, Florian Luthi +9

Exchange-only (EO) spin qubits in quantum dots offer an expansive design landscape for architecting scalable device layouts. The study of two-EO-qubit operations, which involve six…

quant-ph202213 cited

An LLVM-based C++ Compiler Toolchain for Variational Hybrid Quantum-Classical Algorithms and Quantum Accelerators

Pradnya Khalate, Xin-Chuan Wu, Shavindra Premaratne +6

Variational algorithms are a representative class of quantum computing workloads that combine quantum and classical computing. This paper presents an LLVM-based C++ compiler toolch…

quant-ph202117 cited

Solving Quadratic Unconstrained Binary Optimization with divide-and-conquer and quantum algorithms

Gian Giacomo Guerreschi

Quadratic Unconstrained Binary Optimization (QUBO) is a broad class of optimization problems with many practical applications. To solve its hard instances in an exact way, known cl…

quant-ph20202 cited

Realizing Quantum Algorithms on Real Quantum Computing Devices

Carmen G. Almudever, Lingling Lao, Robert Wille +1

Quantum computing is currently moving from an academic idea to a practical reality. Quantum computing in the cloud is already available and allows users from all over the world to…

quant-ph2020

On connectivity-dependent resource requirements for digital quantum simulation of -level particles

Nicolas P. D. Sawaya, Gian Giacomo Guerreschi, Adam Holmes

A primary objective of quantum computation is to efficiently simulate quantum physics. Scientifically and technologically important quantum Hamiltonians include those with spin-